Corey Nislow
Affiliations: | Molecular and Medical Genetics | University of Toronto, Toronto, ON, Canada |
Area:
Genetics, Bioinformatics Biology, Molecular BiologyGoogle:
"Corey Nislow"Parents
Sign in to add mentorRonald W. Davis | grad student | Stanford (Evolution Tree) | |
J. Richard McIntosh | grad student | 1994 | CU Boulder |
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Publications
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Gaikani HK, Stolar M, Kriti D, et al. (2024) From beer to breadboards: yeast as a force for biological innovation. Genome Biology. 25: 10 |
Tremblay R, Mehrjoo Y, Ahmed O, et al. (2023) Persistent Acetylation of Histone H3 Lysine 56 Compromises the Activity of DNA Replication Origins. Molecular and Cellular Biology. 1-30 |
Barazandeh M, Kriti D, Nislow C, et al. (2022) The cellular response to drug perturbation is limited: comparison of large-scale chemogenomic fitness signatures. Bmc Genomics. 23: 197 |
Gaikani H, Smith AM, Lee AY, et al. (2021) Systematic Prediction of Antifungal Drug Synergy by Chemogenomic Screening in . Frontiers in Fungal Biology. 2: 683414 |
Hammond TG, Nislow C, Christov IC, et al. (2021) Author Correction: Cell spinpods are a simple inexpensive suspension culture device to deliver fluid shear stress to renal proximal tubular cells. Scientific Reports. 11: 23166 |
Hammond TG, Nislow C, Christov IC, et al. (2021) Cell spinpods are a simple inexpensive suspension culture device to deliver fluid shear stress to renal proximal tubular cells. Scientific Reports. 11: 21296 |
Gaikani H, Giaever G, Nislow C. (2021) Chemical-Genetic Interactions as a Means to Characterize Drug Synergy. Methods in Molecular Biology (Clifton, N.J.). 2381: 243-263 |
Ogbede JU, Giaever G, Nislow C. (2021) A genome-wide portrait of pervasive drug contaminants. Scientific Reports. 11: 12487 |
Burns AR, Luciani GM, Musso G, et al. (2020) Author Correction: Caenorhabditis elegans is a useful model for anthelmintic discovery. Nature Communications. 11: 3779 |
Edouarzin E, Horn C, Paudyal A, et al. (2020) Broad-spectrum antifungal activities and mechanism of drimane sesquiterpenoids. Microbial Cell (Graz, Austria). 7: 146-159 |